Extensive translation of circular RNAs driven by N6-methyladenosine.
about
Understanding RNA modifications: the promises and technological bottlenecks of the 'epitranscriptome'.Identification and Functional Characterization of Tomato CircRNAs Derived from Genes Involved in Fruit Pigment Accumulation.Short and long non-coding RNAs regulate the epigenetic status of cells.Gene regulation in the immune system by long noncoding RNAs.Sensing Self and Foreign Circular RNAs by Intron Identity.Circular RNAs: A novel type of biomarker and genetic tools in cancer.Genome-Wide Identification of Circular RNAs in Arabidopsis thaliana.The role of circRNAs in cancersCircular RNAs: emerging cancer biomarkers and targets.MeT-DB V2.0: elucidating context-specific functions of N6-methyl-adenosine methyltranscriptome.Circular RNAs (circRNAs) in Health and Disease.Biogenesis of circular RNAs and their roles in cardiovascular development and pathology.Genome-Wide Maps of m6A circRNAs Identify Widespread and Cell-Type-Specific Methylation Patterns that Are Distinct from mRNAs.Global accumulation of circRNAs during aging in Caenorhabditis elegans.Circular RNAs: A Novel Player in Development and Disease of the Central Nervous System.Identifying and Characterizing circRNA-Protein Interaction.Circular RNAs in thoracic diseases.Potential Diagnostic Power of Blood Circular RNA Expression in Active Pulmonary Tuberculosis.Circular RNAs: A novel type of non-coding RNA and their potential implications in antiviral immunity.Heat stress alters genome-wide profiles of circular RNAs in Arabidopsis.RNA methylation and diseases: experimental results, databases, Web servers and computational models.m6A Facilitates eIF4F-Independent mRNA Translation.Circular RNAs are abundant and dynamically expressed during embryonic muscle development in chickens.CircPro: an integrated tool for the identification of circRNAs with protein-coding potential.The emerging role of mRNA methylation in normal and pathological behavior.Novel Role of FBXW7 Circular RNA in Repressing Glioma Tumorigenesis.Circular RNAs in cancer: opportunities and challenges in the field.Current research on circular RNAs associated with colorectal cancer.Circular RNAs: Biogenesis, Function, and a Role as Possible Cancer Biomarkers.Circular RNAs: biogenesis, expression and their potential roles in reproduction.circHLA-C Plays an Important Role in Lupus Nephritis by Sponging miR-150.The Potential Role of circRNA in Tumor Immunity Regulation and Immunotherapy.Current Research on Non-Coding Ribonucleic Acid (RNA).A novel protein encoded by the circular form of the SHPRH gene suppresses glioma tumorigenesis.Circular RNAs: a new frontier for cancer diagnosis and therapy.Noncoding RNAs in Alzheimer's disease.Circular RNA maps paving the road to biomarker development?Constructing GFP-Based Reporter to Study Back Splicing and Translation of Circular RNA.Downregulation of N6-methyladenosine binding YTHDF2 protein mediated by miR-493-3p suppresses prostate cancer by elevating N6-methyladenosine levels.Circular RNAs: clinical relevance in cancer.
P2860
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P2860
Extensive translation of circular RNAs driven by N6-methyladenosine.
description
2017 nî lūn-bûn
@nan
2017年の論文
@ja
2017年論文
@yue
2017年論文
@zh-hant
2017年論文
@zh-hk
2017年論文
@zh-mo
2017年論文
@zh-tw
2017年论文
@wuu
2017年论文
@zh
2017年论文
@zh-cn
name
Extensive translation of circular RNAs driven by N6-methyladenosine.
@en
type
label
Extensive translation of circular RNAs driven by N6-methyladenosine.
@en
prefLabel
Extensive translation of circular RNAs driven by N6-methyladenosine.
@en
P2093
P2860
P50
P356
P1433
P1476
Extensive translation of circular RNAs driven by N6-methyladenosine.
@en
P2093
Ling-Ling Chen
Xiaojuan Fan
Xiaowei Song
Yang Zhang
Yongfeng Jin
P2860
P2888
P304
P356
10.1038/CR.2017.31
P577
2017-03-10T00:00:00Z
P6179
1084127934